The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are investigated. Specifically, the three-dimensional potential of mean force (PMF or free energy) of the CO molecule position inside the protein is calculated by using the single-sweep method in concert with fully resolved atomistic simulations in explicit solvent. The results are interpreted under the assumption that the diffusion of the ligand can be modeled as a navigation on the PMF in which the ligand hops between the PMF local minima following the minimum free energy paths (MFEPs) with rates set by the free energy barriers that need to be crossed. Here, all the local minima of the PMF, the MFEPs, and the barriers along them are calculated. Th...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
The myoglobin protein binds oxygen and catalyzes NO oxidation. As a key model protein, its dynamics ...
We report the results of an extended molecular dynamics simulation on the migration of photodissocia...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
AbstractMyoglobin (Mb) is perhaps the most studied protein, experimentally and theoretically. Despit...
Molecular dynamics simulations of the events after the photodissociation of CO in the myoglobin muta...
We use Markovian milestoning molecular dynamics (MD) simulations on a tessellation of the collective...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
AbstractLigand migration processes inside myoglobin and protein dynamics coupled to the migration we...
The solvent structure and dynamics around myoglobin is investigated at the microscopic level of deta...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
AbstractThe early diffusion processes of a photodissociated ligand (carbon monoxide) in sperm whale ...
The relatively small size of myoglobin makes it suitable for the investigation of the ligand escape ...
Molecular dynamics simulation is used to study the photodissociation of the ligand carbon monoxide f...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
The myoglobin protein binds oxygen and catalyzes NO oxidation. As a key model protein, its dynamics ...
We report the results of an extended molecular dynamics simulation on the migration of photodissocia...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
AbstractMyoglobin (Mb) is perhaps the most studied protein, experimentally and theoretically. Despit...
Molecular dynamics simulations of the events after the photodissociation of CO in the myoglobin muta...
We use Markovian milestoning molecular dynamics (MD) simulations on a tessellation of the collective...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
AbstractLigand migration processes inside myoglobin and protein dynamics coupled to the migration we...
The solvent structure and dynamics around myoglobin is investigated at the microscopic level of deta...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
AbstractThe early diffusion processes of a photodissociated ligand (carbon monoxide) in sperm whale ...
The relatively small size of myoglobin makes it suitable for the investigation of the ligand escape ...
Molecular dynamics simulation is used to study the photodissociation of the ligand carbon monoxide f...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
The myoglobin protein binds oxygen and catalyzes NO oxidation. As a key model protein, its dynamics ...
We report the results of an extended molecular dynamics simulation on the migration of photodissocia...